xref: /llvm-project/lldb/source/Commands/CommandObjectExpression.cpp (revision 15356e7f4f8eb43cb290d0d8cb78bb5d08688310)
1 //===-- CommandObjectExpression.cpp -----------------------------*- C++ -*-===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "CommandObjectExpression.h"
11 
12 // C Includes
13 // C++ Includes
14 // Other libraries and framework includes
15 // Project includes
16 #include "lldb/Interpreter/Args.h"
17 #include "lldb/Core/Value.h"
18 #include "lldb/Core/InputReader.h"
19 #include "lldb/Core/ValueObjectVariable.h"
20 #include "lldb/Expression/ClangExpressionVariable.h"
21 #include "lldb/Expression/ClangUserExpression.h"
22 #include "lldb/Expression/ClangFunction.h"
23 #include "lldb/Expression/DWARFExpression.h"
24 #include "lldb/Host/Host.h"
25 #include "lldb/Core/Debugger.h"
26 #include "lldb/Interpreter/CommandInterpreter.h"
27 #include "lldb/Interpreter/CommandReturnObject.h"
28 #include "lldb/Target/ObjCLanguageRuntime.h"
29 #include "lldb/Symbol/ObjectFile.h"
30 #include "lldb/Symbol/Variable.h"
31 #include "lldb/Target/Process.h"
32 #include "lldb/Target/StackFrame.h"
33 #include "lldb/Target/Target.h"
34 #include "lldb/Target/Thread.h"
35 #include "llvm/ADT/StringRef.h"
36 
37 using namespace lldb;
38 using namespace lldb_private;
39 
40 CommandObjectExpression::CommandOptions::CommandOptions (CommandInterpreter &interpreter) :
41     Options(interpreter)
42 {
43     // Keep only one place to reset the values to their defaults
44     OptionParsingStarting();
45 }
46 
47 
48 CommandObjectExpression::CommandOptions::~CommandOptions ()
49 {
50 }
51 
52 Error
53 CommandObjectExpression::CommandOptions::SetOptionValue (uint32_t option_idx, const char *option_arg)
54 {
55     Error error;
56 
57     char short_option = (char) m_getopt_table[option_idx].val;
58 
59     switch (short_option)
60     {
61       //case 'l':
62       //if (language.SetLanguageFromCString (option_arg) == false)
63       //{
64       //    error.SetErrorStringWithFormat("Invalid language option argument '%s'.\n", option_arg);
65       //}
66       //break;
67 
68     case 'g':
69         debug = true;
70         break;
71 
72     case 'f':
73         error = Args::StringToFormat(option_arg, format, NULL);
74         break;
75 
76     case 'o':
77         print_object = true;
78         break;
79 
80     case 'd':
81         {
82             bool success;
83             bool result;
84             result = Args::StringToBoolean(option_arg, true, &success);
85             if (!success)
86                 error.SetErrorStringWithFormat("Invalid dynamic value setting: \"%s\".\n", option_arg);
87             else
88             {
89                 if (result)
90                     use_dynamic = eLazyBoolYes;
91                 else
92                     use_dynamic = eLazyBoolNo;
93             }
94         }
95         break;
96 
97     case 'u':
98         bool success;
99         unwind_on_error = Args::StringToBoolean(option_arg, true, &success);
100         if (!success)
101             error.SetErrorStringWithFormat("Could not convert \"%s\" to a boolean value.", option_arg);
102         break;
103 
104     default:
105         error.SetErrorStringWithFormat("Invalid short option character '%c'.\n", short_option);
106         break;
107     }
108 
109     return error;
110 }
111 
112 void
113 CommandObjectExpression::CommandOptions::OptionParsingStarting ()
114 {
115     //language.Clear();
116     debug = false;
117     format = eFormatDefault;
118     print_object = false;
119     use_dynamic = eLazyBoolCalculate;
120     unwind_on_error = true;
121     show_types = true;
122     show_summary = true;
123 }
124 
125 const OptionDefinition*
126 CommandObjectExpression::CommandOptions::GetDefinitions ()
127 {
128     return g_option_table;
129 }
130 
131 CommandObjectExpression::CommandObjectExpression (CommandInterpreter &interpreter) :
132     CommandObject (interpreter,
133                    "expression",
134                    "Evaluate a C/ObjC/C++ expression in the current program context, using variables currently in scope.",
135                    NULL),
136     m_options (interpreter),
137     m_expr_line_count (0),
138     m_expr_lines ()
139 {
140   SetHelpLong(
141 "Examples: \n\
142 \n\
143    expr my_struct->a = my_array[3] \n\
144    expr -f bin -- (index * 8) + 5 \n\
145    expr char c[] = \"foo\"; c[0]\n");
146 
147     CommandArgumentEntry arg;
148     CommandArgumentData expression_arg;
149 
150     // Define the first (and only) variant of this arg.
151     expression_arg.arg_type = eArgTypeExpression;
152     expression_arg.arg_repetition = eArgRepeatPlain;
153 
154     // There is only one variant this argument could be; put it into the argument entry.
155     arg.push_back (expression_arg);
156 
157     // Push the data for the first argument into the m_arguments vector.
158     m_arguments.push_back (arg);
159 }
160 
161 CommandObjectExpression::~CommandObjectExpression ()
162 {
163 }
164 
165 Options *
166 CommandObjectExpression::GetOptions ()
167 {
168     return &m_options;
169 }
170 
171 
172 bool
173 CommandObjectExpression::Execute
174 (
175     Args& command,
176     CommandReturnObject &result
177 )
178 {
179     return false;
180 }
181 
182 
183 size_t
184 CommandObjectExpression::MultiLineExpressionCallback
185 (
186     void *baton,
187     InputReader &reader,
188     lldb::InputReaderAction notification,
189     const char *bytes,
190     size_t bytes_len
191 )
192 {
193     CommandObjectExpression *cmd_object_expr = (CommandObjectExpression *) baton;
194 
195     switch (notification)
196     {
197     case eInputReaderActivate:
198         {
199             StreamSP out_stream = reader.GetDebugger().GetAsyncOutputStream();
200             out_stream->Printf("%s\n", "Enter expressions, then terminate with an empty line to evaluate:");
201             out_stream->Flush();
202         }
203         // Fall through
204     case eInputReaderReactivate:
205         break;
206 
207     case eInputReaderDeactivate:
208         break;
209 
210     case eInputReaderAsynchronousOutputWritten:
211         break;
212 
213     case eInputReaderGotToken:
214         ++cmd_object_expr->m_expr_line_count;
215         if (bytes && bytes_len)
216         {
217             cmd_object_expr->m_expr_lines.append (bytes, bytes_len + 1);
218         }
219 
220         if (bytes_len == 0)
221             reader.SetIsDone(true);
222         break;
223 
224     case eInputReaderInterrupt:
225         cmd_object_expr->m_expr_lines.clear();
226         reader.SetIsDone (true);
227         {
228             StreamSP out_stream = reader.GetDebugger().GetAsyncOutputStream();
229             out_stream->Printf("%s\n", "Expression evaluation cancelled.");
230             out_stream->Flush();
231         }
232         break;
233 
234     case eInputReaderEndOfFile:
235         reader.SetIsDone (true);
236         break;
237 
238     case eInputReaderDone:
239 		if (cmd_object_expr->m_expr_lines.size() > 0)
240         {
241             StreamSP output_stream = reader.GetDebugger().GetAsyncOutputStream();
242             StreamSP error_stream = reader.GetDebugger().GetAsyncErrorStream();
243             cmd_object_expr->EvaluateExpression (cmd_object_expr->m_expr_lines.c_str(),
244                                                  output_stream.get(),
245                                                  error_stream.get());
246             output_stream->Flush();
247             error_stream->Flush();
248         }
249         break;
250     }
251 
252     return bytes_len;
253 }
254 
255 bool
256 CommandObjectExpression::EvaluateExpression
257 (
258     const char *expr,
259     Stream *output_stream,
260     Stream *error_stream,
261     CommandReturnObject *result
262 )
263 {
264     if (m_exe_ctx.target)
265     {
266         lldb::ValueObjectSP result_valobj_sp;
267 
268         ExecutionResults exe_results;
269 
270         bool keep_in_memory = true;
271         lldb::DynamicValueType use_dynamic;
272         // If use dynamic is not set, get it from the target:
273         switch (m_options.use_dynamic)
274         {
275         case eLazyBoolCalculate:
276             use_dynamic = m_exe_ctx.target->GetPreferDynamicValue();
277             break;
278         case eLazyBoolYes:
279             use_dynamic = lldb::eDynamicCanRunTarget;
280             break;
281         case eLazyBoolNo:
282             use_dynamic = lldb::eNoDynamicValues;
283             break;
284         }
285 
286         exe_results = m_exe_ctx.target->EvaluateExpression(expr, m_exe_ctx.frame, m_options.unwind_on_error, keep_in_memory, use_dynamic, result_valobj_sp);
287 
288         if (exe_results == eExecutionInterrupted && !m_options.unwind_on_error)
289         {
290             uint32_t start_frame = 0;
291             uint32_t num_frames = 1;
292             uint32_t num_frames_with_source = 0;
293             if (m_exe_ctx.thread)
294             {
295                 m_exe_ctx.thread->GetStatus (result->GetOutputStream(),
296                                              start_frame,
297                                              num_frames,
298                                              num_frames_with_source);
299             }
300             else if (m_exe_ctx.process)
301             {
302                 bool only_threads_with_stop_reason = true;
303                 m_exe_ctx.process->GetThreadStatus (result->GetOutputStream(),
304                                                     only_threads_with_stop_reason,
305                                                     start_frame,
306                                                     num_frames,
307                                                     num_frames_with_source);
308             }
309         }
310 
311         if (result_valobj_sp)
312         {
313             if (result_valobj_sp->GetError().Success())
314             {
315                 if (m_options.format != eFormatDefault)
316                     result_valobj_sp->SetFormat (m_options.format);
317 
318                 ValueObject::DumpValueObject (*(output_stream),
319                                               result_valobj_sp.get(),   // Variable object to dump
320                                               result_valobj_sp->GetName().GetCString(),// Root object name
321                                               0,                        // Pointer depth to traverse (zero means stop at pointers)
322                                               0,                        // Current depth, this is the top most, so zero...
323                                               UINT32_MAX,               // Max depth to go when dumping concrete types, dump everything...
324                                               m_options.show_types,     // Show types when dumping?
325                                               false,                    // Show locations of variables, no since this is a host address which we don't care to see
326                                               m_options.print_object,   // Print the objective C object?
327                                               use_dynamic,
328                                               true,                     // Scope is already checked. Const results are always in scope.
329                                               false);                   // Don't flatten output
330                 if (result)
331                     result->SetStatus (eReturnStatusSuccessFinishResult);
332             }
333             else
334             {
335                 error_stream->PutCString(result_valobj_sp->GetError().AsCString());
336                 if (result)
337                     result->SetStatus (eReturnStatusFailed);
338             }
339         }
340     }
341     else
342     {
343         error_stream->Printf ("error: invalid execution context for expression\n");
344         return false;
345     }
346 
347     return true;
348 }
349 
350 bool
351 CommandObjectExpression::ExecuteRawCommandString
352 (
353     const char *command,
354     CommandReturnObject &result
355 )
356 {
357     m_exe_ctx = m_interpreter.GetExecutionContext();
358 
359     m_options.NotifyOptionParsingStarting();
360 
361     const char * expr = NULL;
362 
363     if (command[0] == '\0')
364     {
365         m_expr_lines.clear();
366         m_expr_line_count = 0;
367 
368         InputReaderSP reader_sp (new InputReader(m_interpreter.GetDebugger()));
369         if (reader_sp)
370         {
371             Error err (reader_sp->Initialize (CommandObjectExpression::MultiLineExpressionCallback,
372                                               this,                         // baton
373                                               eInputReaderGranularityLine,  // token size, to pass to callback function
374                                               NULL,                         // end token
375                                               NULL,                         // prompt
376                                               true));                       // echo input
377             if (err.Success())
378             {
379                 m_interpreter.GetDebugger().PushInputReader (reader_sp);
380                 result.SetStatus (eReturnStatusSuccessFinishNoResult);
381             }
382             else
383             {
384                 result.AppendError (err.AsCString());
385                 result.SetStatus (eReturnStatusFailed);
386             }
387         }
388         else
389         {
390             result.AppendError("out of memory");
391             result.SetStatus (eReturnStatusFailed);
392         }
393         return result.Succeeded();
394     }
395 
396     if (command[0] == '-')
397     {
398         // We have some options and these options MUST end with --.
399         const char *end_options = NULL;
400         const char *s = command;
401         while (s && s[0])
402         {
403             end_options = ::strstr (s, "--");
404             if (end_options)
405             {
406                 end_options += 2; // Get past the "--"
407                 if (::isspace (end_options[0]))
408                 {
409                     expr = end_options;
410                     while (::isspace (*expr))
411                         ++expr;
412                     break;
413                 }
414             }
415             s = end_options;
416         }
417 
418         if (end_options)
419         {
420             Args args (command, end_options - command);
421             if (!ParseOptions (args, result))
422                 return false;
423 
424             Error error (m_options.NotifyOptionParsingFinished());
425             if (error.Fail())
426             {
427                 result.AppendError (error.AsCString());
428                 result.SetStatus (eReturnStatusFailed);
429                 return false;
430             }
431         }
432     }
433 
434     if (expr == NULL)
435         expr = command;
436 
437     if (EvaluateExpression (expr, &(result.GetOutputStream()), &(result.GetErrorStream()), &result))
438         return true;
439 
440     result.SetStatus (eReturnStatusFailed);
441     return false;
442 }
443 
444 OptionDefinition
445 CommandObjectExpression::CommandOptions::g_option_table[] =
446 {
447   //{ LLDB_OPT_SET_ALL, false, "language",   'l', required_argument, NULL, 0, "[c|c++|objc|objc++]",          "Sets the language to use when parsing the expression."},
448 //{ LLDB_OPT_SET_1, false, "format",     'f', required_argument, NULL, 0, "[ [bool|b] | [bin] | [char|c] | [oct|o] | [dec|i|d|u] | [hex|x] | [float|f] | [cstr|s] ]",  "Specify the format that the expression output should use."},
449 { LLDB_OPT_SET_1, false, "format",             'f', required_argument, NULL, 0, eArgTypeExprFormat,  "Specify the format that the expression output should use."},
450 { LLDB_OPT_SET_2, false, "object-description", 'o', no_argument,       NULL, 0, eArgTypeNone, "Print the object description of the value resulting from the expression."},
451 { LLDB_OPT_SET_2, false, "dynamic-value", 'd', required_argument,       NULL, 0, eArgTypeBoolean, "Upcast the value resulting from the expression to its dynamic type if available."},
452 { LLDB_OPT_SET_ALL, false, "unwind-on-error",  'u', required_argument, NULL, 0, eArgTypeBoolean, "Clean up program state if the expression causes a crash, breakpoint hit or signal."},
453 { LLDB_OPT_SET_ALL, false, "debug",            'g', no_argument,       NULL, 0, eArgTypeNone, "Enable verbose debug logging of the expression parsing and evaluation."},
454 { LLDB_OPT_SET_ALL, false, "use-ir",           'i', no_argument,       NULL, 0, eArgTypeNone, "[Temporary] Instructs the expression evaluator to use IR instead of ASTs."},
455 { 0, false, NULL, 0, 0, NULL, NULL, eArgTypeNone, NULL }
456 };
457 
458